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Updated: Jul 30, 2026

Pharmacologic Induction of Epidermal Melanin and Protection Against Sunburn in a Humanized Mouse Model
Published on: September 7, 2013
Activation of the alternative complement pathway by fungal melanins
A L Rosas1, R S MacGill, J D Nosanchuk
1Department of Microbiology and Immunology, Division of Infectious Diseases, Albert Einstein College of Medicine, Golding 701, 1300 Morris Park Ave., Bronx, NY 10461, USA.
Abstract:
Melanins are complex biological pigments formed by the oxidative polymerization of phenolic and/or indolic compounds. These pigments have been implicated in the pathogenesis of some microbial infections, malignancies, degenerative disorders, and autoimmune diseases. Recent studies have demonstrated that melanins have antigenic and anti-inflammatory properties. These findings led us to further explore the interaction of melanins with the immune system. Melanin particles ("ghosts") were isolated from in vitro-melanized Cryptococcus neoformans cells and Aspergillus niger conidia and then incubated in normal human serum containing (125)I-labeled complement C3. The results demonstrated deposition of C3 fragments onto the melanin ghosts as early as 1 min after incubation, with maximum deposition occurring after 12 min for C. neoformans-derived melanin ghosts and after 25 min for A. niger-derived melanin ghosts. The blocking of classical pathway activation did not affect the kinetics or total deposition of C3 onto the melanin ghosts, indicating that melanins activate complement through the alternative pathway. Immunofluorescence analysis of lungs from BALB/c mice injected intratracheally with C. neoformans-derived melanin ghosts demonstrated deposition of C3 fragments onto the ghosts. Small granulomas were also observed surrounding the ghosts. However, melanization of the C. neoformans cell wall did not alter the kinetics or total deposition of C3 fragments onto the fungal cells. The finding that melanin surfaces can activate the complement system suggests a potential mechanism for the pathogenesis of some degenerative and/or autoimmune processes that involve melanized cells as well as another potential role for melanin in the virulence of melanin-producing microorganisms.
Insights
Melanin pigments activate the human complement system’s alternative pathway, leading to C3 fragment deposition. This interaction may contribute to microbial virulence and autoimmune diseases involving melanized cells.
Area of Science:
- Immunology
- Microbiology
- Biochemistry
Background:
- Melanins are complex pigments derived from phenolic/indolic compounds.
- Melanins are implicated in various diseases, including infections, malignancies, and autoimmune disorders.
- Recent evidence suggests melanins possess antigenic and anti-inflammatory properties.
Purpose of the Study:
- To investigate the interaction between melanins and the immune system, specifically complement activation.
- To determine the pathway of complement activation by melanin particles.
Main Methods:
- Isolation of melanin particles ('ghosts') from Cryptococcus neoformans and Aspergillus niger.
- Incubation of melanin ghosts with human serum containing labeled complement C3.
- Analysis of C3 fragment deposition kinetics and pathway involvement (classical vs. alternative).
- In vivo immunofluorescence and histological analysis in a mouse model.
Main Results:
- Rapid deposition of C3 fragments onto melanin ghosts, indicating complement activation.
- Complement activation occurred via the alternative pathway, independent of the classical pathway.
- In vivo studies confirmed C3 deposition on melanin ghosts in mouse lungs, with granuloma formation.
- Fungal cell wall melanization did not significantly alter C3 deposition kinetics or levels.
Conclusions:
- Melanin surfaces activate the complement system through the alternative pathway.
- This activation may contribute to the pathogenesis of degenerative and autoimmune diseases.
- Melanin's ability to activate complement suggests a role in the virulence of melanin-producing microbes.
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